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    • 5. 发明申请
    • Method for Monitoring an Electrochemical Treatment Process and Electrode Arrangement Suited for Carrying Out This Method
    • 监测电化学处理方法和电极排列方法
    • US20070295614A1
    • 2007-12-27
    • US11667331
    • 2005-11-16
    • Axel ArndtUwe PyritzGabriele Winkler
    • Axel ArndtUwe PyritzGabriele Winkler
    • C25D17/12
    • C25D17/12B23H11/006C25D17/10C25D21/12C25F5/00C25F7/00
    • There is described a counter-electrode arrangement that, e.g. can be used when coating and removing coatings from turbine blades, and to a method for the operation thereof. The counter-electrode arrangement comprises a reference electrode arrangement that is connected to the counter-electrode in an electrically non-conductive manner via contact elements. During the treatment process, a balanced potential over the surface to be treated is created by adapting the reference electrode arrangement, which as individual electrodes, to a surface to be treated. In a method for operating the counter-electrode arrangement, a measuring current can be applied to this arrangement in a first step for creating a balanced potential. The individual electrodes of the reference electrode arrangement can be separately contacted in order to determine the respective local potential on the surface of the component to be treated. The counter-electrodes can be adjusted so that a balanced potential prevails on the individual electrodes. During the subsequent treatment of the workpiece, the individual electrodes are interconnected in parallel and used as a reference electrode for maintaining a required treatment potential.
    • 描述了一种对电极装置,例如, 可以在从涡轮机叶片涂布和除去涂层时使用,以及用于其操作的方法。 对电极布置包括参考电极装置,其通过接触元件以不导电的方式连接到对电极。 在处理过程中,通过使作为单独电极的参考电极装置适配到待处理的表面来产生待处理表面上的平衡电位。 在用于操作对电极布置的方法中,可以在用于产生平衡电位的第一步骤中对该布置应用测量电流。 参考电极装置的各个电极可以分开接触,以便确定要处理的部件的表面上的各自的局部电位。 可以调节对电极,使得在各个电极上占优势。 在随后的工件处理期间,各个电极并联连接并用作参考电极,以保持所需的治疗电位。
    • 10. 发明授权
    • Method for producing a coating through cold gas spraying
    • 通过冷气喷涂生产涂层的方法
    • US08241702B2
    • 2012-08-14
    • US12934902
    • 2009-03-25
    • Christian DoyeUrsus KrügerUwe Pyritz
    • Christian DoyeUrsus KrügerUwe Pyritz
    • B05D1/02B05D5/00
    • C23C24/04
    • The embodiments include a method for producing a coating through cold gas spraying. In the process, particles according to the embodiments are used which contain a photocatalytic material. In order to improve the effect of this photocatalytic material (such as titanium dioxide), a reactive gas can be added to the cold gas stream, the reactive gas being activated by a radiation source not shown, for example by UV light, on the surface of the coating that forms. This makes it possible to, for example, dose titanium dioxide with nitrogen. This allows the production of in situ layers having advantageously high catalytic effectiveness. The use of cold gas spraying has the additional advantage in that the coating can be designed to contain pores that enlarge the surface available for catalysis.
    • 实施方案包括通过冷气喷涂生产涂层的方法。 在该方法中,使用含有光催化材料的根据实施方案的颗粒。 为了改善这种光催化材料(例如二氧化钛)的效果,可以向冷气流中加入反应性气体,反应气体由未示出的辐射源例如通过UV光激发,在表面上 的涂层。 这使得可以例如用氮气剂量二氧化钛。 这允许生产具有有利的高催化效果的原位层。 使用冷气喷涂具有额外的优点,因为涂层可以设计成包含扩大可用于催化的表面的孔。